首页> 外文期刊>The Journal of biological chemistry >Involvement of Caveolin in Low K+-induced Endocytic Degradation of Cell-surface Human Ether-a-go-go-related Gene (hERG) Channels
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Involvement of Caveolin in Low K+-induced Endocytic Degradation of Cell-surface Human Ether-a-go-go-related Gene (hERG) Channels

机译:Caveolin在低K +诱导的细胞表面醚 - a-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go相关基因中的参与

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摘要

Reduction in the rapidly activating delayed rectifier K+ channel current (IKr) due to either mutations in the human ether-a-go-go-related gene (hERG) or drug block causes inherited or drug-induced long QT syndrome. A reduction in extracellular K+ concentration ([K+]o) exacerbates long QT syndrome. Recently, we demonstrated that lowering [K+]o promotes degradation of IKr in rabbit ventricular myocytes and of the hERG channel stably expressed in HEK 293 cells. In this study, we investigated the degradation pathways of hERG channels under low K+ conditions. We demonstrate that under low K+ conditions, mature hERG channels and caveolin-1 (Cav1) displayed a parallel time-dependent reduction. Mature hERG channels coprecipitated with Cav1 in co-immunoprecipitation analysis, and internalized hERG channels colocalized with Cav1 in immunocytochemistry analysis. Overexpression of Cav1 accelerated internalization of mature hERG channels in 0 mm K+o, whereas knockdown of Cav1 impeded this process. In addition, knockdown of dynamin 2 using siRNA transfection significantly impeded hERG internalization and degradation under low K+o conditions. In cultured neonatal rat ventricular myocytes, knockdown of caveolin-3 significantly impeded low K+o-induced reduction of IKr. Our data indicate that a caveolin-dependent endocytic route is involved in low K+o-induced degradation of mature hERG channels.
机译:由于在人类ether-A-GO-go相关基因或者突变(hERG的)或药物块减少在快速激活延迟整流K +通道电流(的IKr)导致遗传性或药物诱导的长QT综合症。细胞外k +浓度([k +] O)的降低加剧了长QT综合征。最近,我们证明降低[k +] o促进IKR在兔心室肌细胞中的降解,并在HEK 293细胞中稳定地表达的HERG通道。在这项研究中,我们在低K +条件下研究了HERG频道的降解途径。我们证明,在低k +条件下,成熟的Herg通道和Caveolin-1(Cav1)显示了平行的时间依赖性减少。成熟的疱疹通道在共免疫沉淀分析中与CAV1共沉淀,并在免疫细胞化学分析中与CAV1结合的内化HERG通道。脉冲的过度表达在0 mm k + O中加速了成熟疱疹通道的内化,而Cav1的敲低阻碍了该过程。此外,使用siRNA转染的动力学2敲低显着阻碍了低K + O条件下的HERG内化和降解。在培养的新生大鼠心室肌细胞中,Caveolin-3的敲低显着阻碍了低K + O诱导的IKR。我们的数据表明Caveolin依赖性内核途径涉及成熟疱疹通道的低K + O型致病。

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